Obesity and the regulation of fat metabolism.

Kaveh Ashrafi
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引用次数: 206

Abstract

As in all living organisms, survival in C. elegans requires adequate management of energy supplies. Genetic screens have revealed that C. elegans fat regulation involves a complex network of genes with known or likely functions in food sensation, neuroendocrine signaling, uptake, transport, storage and utilization of fats. Core fat and sugar metabolic pathways are conserved in C. elegans. Flux through these pathways is modulated by cellular energy sensors that operate via transcriptional and translational regulatory mechanisms. In turn, neuroendocrine mechanisms couple sensory and metabolic pathways while neuromodulatory pathways influence both metabolic and food seeking/consumption pathways. The shared ancestry of C. elegans and mammalian fat regulatory pathways extends to developmental programs that underlie fat storage capacity, despite lack of dedicated adipocytes, and genes whose human homologs are implicated in obesity. This suggests that many of the newly identified C. elegans fat regulatory pathways play similar roles in mammals. C. elegans is ideally suited for the integrated study of mechanisms that operate in multiple tissues and elicit feedback responses that affect processes as diverse as metabolism and behavior.

肥胖与脂肪代谢的调节。
和所有生物一样,秀丽隐杆线虫的生存需要足够的能量供应管理。遗传筛选表明,秀丽隐杆线虫的脂肪调节涉及一个复杂的基因网络,这些基因在食物感觉、神经内分泌信号、脂肪的摄取、运输、储存和利用中具有已知或可能的功能。核心脂肪和糖代谢途径在秀丽隐杆线虫中是保守的。通过这些途径的通量由细胞能量传感器通过转录和翻译调节机制进行调节。反过来,神经内分泌机制耦合感觉和代谢途径,而神经调节途径同时影响代谢和食物寻找/消费途径。秀丽隐杆线虫和哺乳动物脂肪调节途径的共同祖先延伸到脂肪储存能力的发育程序,尽管缺乏专门的脂肪细胞,以及与人类同源的基因与肥胖有关。这表明许多新发现的秀丽隐杆线虫脂肪调节途径在哺乳动物中起着类似的作用。秀丽隐杆线虫非常适合于在多种组织中运作的机制的综合研究,并引发影响新陈代谢和行为等多种过程的反馈反应。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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